论文标题
极端的粉丝波和随附的环振荡
Extreme-Ultraviolet Wave and Accompanying Loop Oscillations
论文作者
论文摘要
我们介绍了极端粉状物(EUV)波的观察结果,该波源于2021年10月28日的活动区域(AR)NOAA 12887及其对相邻环路的影响。大气成像组件(AIA)在各种波段的太阳能动力学天文台(SDO)上观察到了这一事件,以及与具有不同视图角度不同视图角度的极端粉丝脉络膜成像仪(EUVI)和COR1乐器的太阳陆地关系天文台天文台预测(Stereo-A)。我们表明,EUV波事件包括几波和非波现象。波部成分包括:EUV波事件的快速模式部分,附近环中的振荡以及波列的出现。非波部组件由固定前线组成。我们分析了选定的振荡环,发现这些振荡的周期范围为230-549 s。此外,我们计算环内外的密度比和磁场强度。计算的密度比和磁场分别在1.08-2.92和5.75-8.79 g的范围内。最后,通过结合SDO和立体声观测值,我们发现观察到的EUV波分量在CME前缘之前传播。
We present the observations of an extreme-ultraviolet (EUV) wave, which originated from the active region (AR) NOAA 12887 on 28 October 2021 and its impact on neighbouring loops. The event was observed by the Atmospheric Imaging Assembly (AIA) on board the Solar Dynamics Observatory (SDO) satellite at various wavebands and by the Solar TErrestrial RElations Observatory-Ahead (STEREO-A) with its Extreme-Ultraviolet Imager (EUVI) and COR1 instruments with a different view angle than SDO. We show that the EUV wave event consists of several waves as well as non-wave phenomena. The wave components include: the fast-mode part of the EUV wave event, creation of oscillations in nearby loops, and the appearance of wave trains. The non-wave component consists of stationary fronts. We analyze selected oscillating loops and find that the periods of these oscillations range from 230 - 549 s. Further, we compute the density ratio inside and outside the loops and the magnetic field strength. The computed density ratio and magnetic field are found in the range of 1.08 - 2.92 and 5.75 - 8.79 G, respectively. Finally, by combining SDO and STEREO-A observations, we find that the observed EUV wave component propagates ahead of the CME leading edge.